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Hydrosilylation of Esters Catalyzed by Bisphosphine Manganese(I) Complex: Selective Transformation of Esters to Alcohols
36
Citations
97
References
2020
Year
Chemical EngineeringCorresponding AlcoholsEngineeringSelective TransformationAvailable Bisphosphine LigandNatural SciencesDiversity-oriented SynthesisBisphosphine ManganeseOrganic ChemistryOrganometallic CatalysisCatalysisChemistryEfficient HydrosilylationsAsymmetric CatalysisSynthetic ChemistryEnantioselective SynthesisBiomolecular Engineering
Selective and efficient hydrosilylations of esters to alcohols by a well-defined manganese(I) complex with a commercially available bisphosphine ligand are described. These reactions are easy alternatives for stoichiometric hydride reduction or hydrogenation, and employing cheap, abundant, and nonprecious metal is attractive. The hydrosilylations were performed at 100 °C under solvent-free conditions with low catalyst loading. A large variety of aromatic, aliphatic, and cyclic esters bearing different functional groups were selectively converted into the corresponding alcohols in good yields.
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